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CdSe/ZnS colloidal quantum dots with alloyed core/shell interfaces: A photoluminescence dynamics study

机译:具有合金核/壳界面的CdSe / ZnS胶体量子点:光致发光动力学研究

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摘要

Time-resolved photon counting technique was employed to study dynamics of photoluminescence from the ensemble and single CdSe/ZnS quantum dots with the alloyed core/shell interfaces. The ensemble data revealed enhanced effect of disorder-induced trap states for increasing emission energy, as implied from the changes in the distribution of total decay rates. The emission trajectories collected for single quantum dots showed familiar, two-state blinking pattern. It suggests that in a large-band-offset CdSe/ZnS system, the introduced alloying of the core-to-shell region cannot smooth enough the confinement potential in order to suppress nonradiative Auger recombination and blinking.
机译:时间分辨光子计数技术用于研究具有合金化核/壳界面的整体和单个CdSe / ZnS量子点的光致发光动力学。总体数据显示,总衰变速率分布的变化暗示了无序诱导陷阱态对增加发射能量的增强作用。为单个量子点收集的发射轨迹显示出熟悉的两态闪烁模式。这表明在大偏移量的CdSe / ZnS系统中,引入的核-壳区合金化不能充分平滑限制电位,从而抑制非辐射俄歇复合和闪烁。

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